Flp-AC is a lightweight utility that can help you perform calculations of pressure drops for any gas.
You can use this application to easily calculate the gas flow-rates, the friction factor and the Reynolds number for a user-defined gas or liquid. Furthermore, it does not require installation, so you can easily run it from any removable drive.
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In late 2008, we released a new version that greatly improved Flp-AC Crack’s efficiency by moving the application to the background. As of the start of April 2012, Flp-AC is now a free beta application that can be downloaded by anyone.Although it is widely recognized that viruses replicate at different rates in various host cells, the molecular mechanisms underlying this regulation in these various cell types are not well understood. However, many human viruses replicate at a higher rate and produce more progeny in rapidly proliferating cells than in cells with slower growth rates. To address how viruses regulate the synthesis of their progeny during the growth of an infection, we have developed a new assay called two stage syncytium formation assay (2SSA) that allows us to examine the effects of a virus infection in individual cells over an extended period of time. By using the 2SSA in conjunction with quantitative RT-PCR, we have shown that various human viruses regulate the synthesis of their progeny at different points during the infection. These results suggest that the stage of infection at which a virus establishes an infection may be a key to understanding the mechanisms of its regulation. Another aim of this project is to develop a new assay system for the study of host cell resistance to viral infections. In previous studies, we have developed new recombinant Newcastle Disease Virus (rNDV) strains that are able to grow well in Chinese Hamster Ovary (CHO) cells and can be grown to high titers in these cells. The rNDVs can be neutralized by a monoclonal antibody that recognizes the F protein of rNDV. We also generated a mutant NDV strain that grew well in CHO cells but failed to produce an NDV induced CPE. This mutant virus, however, did induce interferon production in infected cells. This recombinant mutant virus will be very useful to address the questions about the roles of interferon in host cell resistance to NDV infections. We also examined the pathogenicity of the new recombinant NDV strains in comparison to the wild type virulent strains. These studies have shown that the new recombinant strains are replication defective and are very virulent and lethal for chickens. We also demonstrated that the new recombinant NDV strains grow to high titers in chickens and are able to spread to several tissues following intranasal delivery. This allows us to examine the contribution of cells of the upper and lower respiratory tracts in limiting infection following intranasal delivery.
The application is based on the idea of calculating the airflow and pressure drop through an air flow device.
The main target of this application is single-phase air-flow devices, like heat exchangers, filters and mass-flow controllers.
It is possible to deal with multi-phase flow systems by defining the gas-phases.
Pressure drops are calculated by dividing the pressure drop over a defined section of the flow-device (steady-state regime) by the cross-sectional area of the flow-device.
The algorithm described in the application is based on the solution to the linear one-dimensional unsteady-state equations of mass and momentum.
It is necessary to provide the requested initial-conditions (mass-flow rate, energy-flow rate and pressure drop) to the application to perform the calculation.
There are 3 main tabs to configure the application:
Calculate Once tab
Controls the unit of the selected unit of the flow device.
Controls the initial conditions entered in the app to be used for the calculation.
Tells the user whether the results are relevant or not.
In case an imaginary gas is used, controls the amount of energy taken from the system.
Now lets have a look at the different components of the application:
Pressure calculates the pressure drop. It is located in the Calculate tab.
The optional parameter Unit can be set to m³/s, psi, kPa or MPa.
In case the calculation of the pressure drop is performed, a Window will appear in which you can confirm the accuracy of the results.
The calculation of the mass-flow rate is located in the Mass Calculation tab.
To calculate the mass-flow rate you can set the input pressure in psi or KPa units.
Calculation of the dynamic pressure:
The calculation of the dynamic pressure is located in the Calculate tab of the Mass Calculation tab.
The required parameter here is the velocity profile at the inlet and the outlet of the flow device.
To calculate the mass flow rate of a fuel from a system through a pipe, select a fuel, then select the pipe and start the application.
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1. Calculations in m²/s, kPa, m/s and kg/cm²
2. You can switch between dry air and wet air conditions
3. Display results in various units
4. You can manually enter data for Flp-AC
5. It is easy to run both on a computer and a handheld calculator
6. For documentation, we can convert the application to PDF or HTML format
1. It is a fast and light program that can be run from any removable drive. It does not require installation.
2. You can calculate the pressure drops for both air and wet air conditions. You can choose from the following scenarios:
2.1. Pressure drop is a function of flow-rate.
2.2. Pressure drop is a function of the flow-rate, the viscosity of the medium, the density of the medium and the dimensions of the flow-channel.
2.3. You can also enter the turbulence coefficient of the flow.
2.4. You can use natural air (0.0012/0.00021/0.001 for air, wet air and oil respectively)
2.5. You can also enter a mixture of the three gases.
3. Flp-AC is a very versatile and intuitive application. The application has an easy user interface. You can choose between a simple or a detailed view. We can simplify the interface as much as necessary so that it looks only like a simple calculator for you to use.
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What’s New In?
* Calculate gas flow-rates. * Calculate gas pressure drops. * Calculate liquid pressure drops. * Calculate velocity profiles for a defined flow section. * Calculate friction factor. * Calculate the Reynolds number. * Easily perform calculations for liquids and gases.
What’s New in this Release:
* Added email support.
* Added fluid entries to the list of available fluids. * Added more options to the front panel.
* Added the ability to adjust the maximum number of DIVs generated. * Added a new method for calculating fluid pressure drops. * Added a new method for calculating flow-rates.
What’s New in This Release:
* Added email support.
* Added fluid entries to the list of available fluids.
* Added more options to the front panel.
* Added the ability to adjust the maximum number of DIVs generated.
* Added a new method for calculating fluid pressure drops.
* Added a new method for calculating flow-rates.
* Fixed a bug that prevented the loading of the latest version of the program.
* Fixed a bug that prevented the program to run correctly with the Flp-AC icon in the Windows menu.
* Improved documentation.
* Increased code security.
* The easiest way to calculate parameters of flow. * The best solution to calculate drag. * The program works with a wide range of gases and liquids.
* Flp-AC does not require installation.
* The application can calculate pressure drops for gases as well as for liquids. * The application calculates friction factor and Reynolds number and pressure drops for fluids. * Flp-AC works on mobile devices.
* Does not require any other applications to run. * The latest version can be downloaded from www.flp-ac.com.
Here’s a sample calculation:
Pressure drop for:
Flow of a gas:
Pressure drop for:
Flow of a liquid:
Using the calculator is easy.
To use the calculator you need to fill the three texts with values.
Each text is separated by a tab.
Press Tab and then enter the gas flow-rate into the field “Flow of a gas” and then click on the first button “Calculate”.
Windows XP (SP3), Vista (SP2), Windows 7 (SP1)
2.8GHz (or faster) processor with Hyper-Threading
8MB available video memory
Broadband Internet connection with a high speed link
If you are installing this game on a system with a network connection, you will